Wang, S.; Kuang, H.; Li, W.; Wang, Y.; Luo, H.; Li, C.; Ge, H.; Wang, Q.; Jia, B.
Enhanced Tunability of Dual-Band Chiral Metasurface in the Mid-Infrared Range via Slotted Nanocircuit Design. Nanomaterials 2024, 14, 979.
https://doi.org/10.3390/nano14110979
AMA Style
Wang S, Kuang H, Li W, Wang Y, Luo H, Li C, Ge H, Wang Q, Jia B.
Enhanced Tunability of Dual-Band Chiral Metasurface in the Mid-Infrared Range via Slotted Nanocircuit Design. Nanomaterials. 2024; 14(11):979.
https://doi.org/10.3390/nano14110979
Chicago/Turabian Style
Wang, Shengyi, Hanzhuo Kuang, Wenjie Li, Yanni Wang, Hao Luo, Chengjun Li, Hua Ge, Qiu Wang, and Bowen Jia.
2024. "Enhanced Tunability of Dual-Band Chiral Metasurface in the Mid-Infrared Range via Slotted Nanocircuit Design" Nanomaterials 14, no. 11: 979.
https://doi.org/10.3390/nano14110979
APA Style
Wang, S., Kuang, H., Li, W., Wang, Y., Luo, H., Li, C., Ge, H., Wang, Q., & Jia, B.
(2024). Enhanced Tunability of Dual-Band Chiral Metasurface in the Mid-Infrared Range via Slotted Nanocircuit Design. Nanomaterials, 14(11), 979.
https://doi.org/10.3390/nano14110979